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长时间次最大收缩期间肌肉纤维传导速度、平均功率频率和平均肌电图电压的变化。

Changes in muscle fiber conduction velocity, mean power frequency, and mean EMG voltage during prolonged submaximal contractions.

作者信息

Arendt-Nielsen L, Mills K R, Forster A

机构信息

Department of Medical Informatics, Aalborg University, Denmark.

出版信息

Muscle Nerve. 1989 Jun;12(6):493-7. doi: 10.1002/mus.880120610.

Abstract

Average muscle fiber conduction velocity, mean power frequency, and mean EMG voltage have been measured in human vastus lateralis during prolonged isometric knee extensions at 10, 20, 30, and 40% of the maximum knee extension force. During contractions at 10 and 20% of maximum force, conduction velocity and mean power frequency rose as the contraction progressed, whereas the conduction velocity and mean power frequency fell at 30 and 40% of the maximum force. The mean EMG voltage rose during the contractions, with steeper increases for higher forces. It is argued that two principal factors influence the EMG during prolonged submaximal contractions: firstly, the fatigue of current active motor units, and, secondly, recruitment of fresh motor units. These factors act in opposition to muscle fiber conduction velocity. Recruitment gives an increase in average conduction velocity, whereas fatigue provokes a slowing in conduction velocity.

摘要

在最大伸膝力的10%、20%、30%和40%下进行长时间等长伸膝时,已测量了人体股外侧肌的平均肌纤维传导速度、平均功率频率和平均肌电图电压。在最大力的10%和20%收缩期间,随着收缩的进行,传导速度和平均功率频率上升,而在最大力的30%和40%时,传导速度和平均功率频率下降。收缩期间平均肌电图电压上升,力越大上升越陡。有人认为,在长时间次最大收缩期间,有两个主要因素影响肌电图:第一,当前活跃运动单位的疲劳;第二,新运动单位的募集。这些因素与肌纤维传导速度的作用相反。募集使平均传导速度增加,而疲劳则导致传导速度减慢。

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